This paper deals with the GPS-based relative navigation of LEO formations. Specifically, we consider applications characterized by two co-flying satellites with a large and highly variable separation, which are relevant to next generation monostatic/bistatic Synthetic Aperture Radar missions. In these applications, both scientific goals and control needs require the determination of the relative state with high accuracy. To this end, an Extended Kalman Filter is developed that processes double-difference pseudorange and carrier phase measurements on L1 and L2 frequencies. To preserve accuracy and robustness of the integer solution problem against large variations of the baseline, an original approach is developed in which, for each receiver...
A basic requirement for a satellite's formation is the precise knowledge of the spacecraft's relativ...
Relative baseline estimation is an integral part of satellite formation flying missions. GNSS-based ...
This paper deals with the problem of real-time onboard relative positioning of low-Earth-orbit space...
This paper deals with the GPS-based relative navigation of LEO formations. Specifically, we consider...
This paper addresses the problem of determining the baseline of formation flying satellites using ca...
This paper describes a carrier-phase differential GPS approach for real-time relative navigation of ...
Precision relative navigation is an essential aspect of spacecraft formation flying missions, both f...
This paper describes a carrier-phase differential GPS approach for real-time relative navigation of ...
this paper aims at identifying the best filtering approach to be used in relative orbit scenarios in...
The paper deals with the use of dual-frequency Carrier-phase Differential GPS for autonomous relativ...
This paper deals with the relative navigation of a formation of two spacecrafts separated by hundred...
Carrier-phase differential GPS (CDGPS) is a promising technology for accurate relative navigation in...
Carrier-phase differential GPS (CDGPS) is a promising technology for accurate relative navigation in...
A basic requirement for a satellite's formation is the precise knowledge of the spacecraft's relativ...
Relative baseline estimation is an integral part of satellite formation flying missions. GNSS-based ...
This paper deals with the problem of real-time onboard relative positioning of low-Earth-orbit space...
This paper deals with the GPS-based relative navigation of LEO formations. Specifically, we consider...
This paper addresses the problem of determining the baseline of formation flying satellites using ca...
This paper describes a carrier-phase differential GPS approach for real-time relative navigation of ...
Precision relative navigation is an essential aspect of spacecraft formation flying missions, both f...
This paper describes a carrier-phase differential GPS approach for real-time relative navigation of ...
this paper aims at identifying the best filtering approach to be used in relative orbit scenarios in...
The paper deals with the use of dual-frequency Carrier-phase Differential GPS for autonomous relativ...
This paper deals with the relative navigation of a formation of two spacecrafts separated by hundred...
Carrier-phase differential GPS (CDGPS) is a promising technology for accurate relative navigation in...
Carrier-phase differential GPS (CDGPS) is a promising technology for accurate relative navigation in...
A basic requirement for a satellite's formation is the precise knowledge of the spacecraft's relativ...
Relative baseline estimation is an integral part of satellite formation flying missions. GNSS-based ...
This paper deals with the problem of real-time onboard relative positioning of low-Earth-orbit space...